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20162022
most citedQuaternionic perturbation theory

16 citations · 47 across the 9 of their papers we have counts for

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physics.optics2022

Goos-Haenchen lateral displacements and angular deviations: When these optical effects offset each other

Stefano De Leo, Luca Maggio, Moreno D'Ambrosio

For optical beams, transmitted by a right angle prism, the Goos-Haenchen shift can never be seen as a pure effect. Indeed, the lateral displacement, caused by the total internal re…

physics.optics2021

Angular deviations: From a cubic equation to a universal closed formula to determine the peak position of reflected and (upper) transmitted beams

Stefano De Leo, Alessia Stefano

Angular deviations and lateral displacements are optical effects widely investigated in literature. In this paper, by using the Taylor expansion of the Fresnel coefficients, we obt…

physics.optics201914 cited

Lateral shifts and angular deviations of Gaussian optical beams reflected by and transmitted through dielectric blocks: A tutorial review

Steafno De Leo, Gabriel G. Maia

In this work, we summarize the current state of understanding of lateral displacement and angular deviations of an optical beam propagating through dielectric blocks. In part I, th…

physics.optics20195 cited

Power oscillations induced by the relative Goos-Haenchen phase

Manoel P. Araújo, Stefano De Leo, Gabriel G. Maia +1

By using an optical interferometer composed of a dielectric laser ellipsometer, to change the optical response of transverse electric and magnetic incident radiation, and two polar…

physics.optics20198 cited

Experimental evidence of laser power oscillations induced by the relative Fresnel (Goos-Haenchen) phase

S. A. Carvalho, S. De Leo, J. A. O. Huguenin +2

The amplification of the relative Fresnel (Goos-Haenchen) phase by an appropriate number of total internal reflections and the choice of favorable incidence angles allow to observe…

physics.optics20192 cited

The effect of the geometrical optical phase on the propagation of Hermite-Gaussian beams through transversal and parallel dielectric blocks

Silvania A. Carvalho, Stefano De Leo

When an optical beam propagates through dielectric blocks, its optical phase is responsible for the path of the beam. In particular, the first order Taylor expansion of the geometr…